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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermodynamic analysis of thermal energy recovery and direct reduction (TER-DR) system for molten copper slag
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Thermodynamic analysis of thermal energy recovery and direct reduction (TER-DR) system for molten copper slag

机译:用于熔融铜渣的热能回收和直接减速(TER-DR)系统的热力学分析

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摘要

At present, air cooling and water quenching are traditional treatment methods for molten copper slag. However, the waste heat and valuable metals cannot be recovered efficiently by these methods. Exergy efficiency (EE) of this method is only 21.0%. This paper describes a feasibility of waste heat recovery and direct reduction of copper slag. To investigate the feasibility of this new thermal energy recovery and direct reduction system (TER-DR), thermodynamic compass method was applied. Based on physical and chemical recovery methods, TER-DR1 and TER-DR2 systems are put forward. TER-DR1 system decreases the exergy loss (EXL) and improves the EE to 57.3%, and 0.489 t DRI is acquired for every ton of copper slag. Exergy of six kinds of typical endothermic chemical reactions was analyzed. The exergy of reforming reaction of CH4 by CO2 is the highest and suitable for TER-DR system. Combined with chemical method, TER-DR2 system decreases EXL further and improves the EE to 61.3%. Steam, synthesis gas and DRI are produced by this method. By TER-DR2, for every ton of copper slag, 0.489 t DRI, 67.3 m(3) CO and 67.3 m(3) H-2 are acquired.
机译:目前,空气冷却和水淬火是熔融铜渣的传统治疗方法。然而,这些方法不能有效地回收废热和有价值的金属。这种方法的高级效率(EE)仅为21.0%。本文描述了废热回收和直接减少铜渣的可行性。为了研究新的热能回收和直接减速系统(TER-DR)的可行性,应用了热力学罗盘方法。基于物理和化学回收方法,提出了TER-DR1和TER-DR2系统。 Ter-DR1系统降低了漏胀损失(EXL),并将EE改善为57.3%,为每吨铜渣采集0.489吨。分析了六种典型的吸热化学反应的渗透。 CH4通过CO2的改革反应的能力最高,适用于TER-DR系统。结合化学方法,TER-DR2系统进一步降低并将EE改善为61.3%。通过该方法生产蒸汽,合成气和DRI。通过Ter-DR2,为每吨铜渣,0.489 T DRI,67.3M(3)CO和67.3M(3)H-2。

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